Design and Simulation of A RF Front-end Circuit of Dual Channel Navigation Receiver

Yu Zhang, Qiang Wu, Jie Liu
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Abstract

RF front-end design is one of the most important steps in receiver design, and its noise performance has a significant impact on the received signal noise characteristics, baseband processing performance, the final positioning accuracy and other indicators. The theoretical IF value of the satellite signal received by the receiver and the frequency search range of the signal acquisition algorithm depend on the frequency setting scheme of the RF front-end. This paper introduces the RF front-end design of a dual-channel multi-mode multi-frequency receiver, mainly for BI1 and L1C frequency points, the circuit design of the RF end of the receiver is introduced in detail, and the corresponding solutions are introduced for the link attenuation, signal radiation, electromagnetic interference and other conditions of the RF link. And the corresponding link simulation is carried out through ADS to ensure the reliability of the design. The final product is tested by the corresponding hardware and software, and the expected effect is achieved.
双通道导航接收机射频前端电路的设计与仿真
射频前端设计是接收机设计中最重要的步骤之一,其噪声性能对接收信号的噪声特性、基带处理性能、最终定位精度等指标有着重要的影响。接收机接收到的卫星信号的理论中频值和信号采集算法的频率搜索范围取决于射频前端的频率整定方案。本文介绍了一种双通道多模多频接收机的射频前端设计,主要针对BI1和L1C两种频率点,详细介绍了接收机射频端的电路设计,并针对射频链路的链路衰减、信号辐射、电磁干扰等情况介绍了相应的解决方案。并通过ADS进行了相应的链路仿真,保证了设计的可靠性。通过相应的硬件和软件对最终产品进行测试,达到了预期的效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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